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Analysis on parameter sensitivity and dynamic response of the mill drive system

机译:轧机驱动系统的参数灵敏度和动态响应分析

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In the process of rolling, torsion vibration of mill drive system may decrease the lifetime of components, reduce the production efficiency, and also induce harmful effects on quality of product, even damage the equipment performance. Using the lumped-mass method, the main drive chain is described by a branching asymmetrical model with ten-degree-of freedom. The mechanical subsystem and the electrical control loop are coupled through electromagnetic driving torque, and an electromechanical coupling simulation model is synthesized together. Based on this built model, the sensitivity of natural modes to the moment of inertia and the torsion stiffness is analyzed, and the best ways modifying system parameters to modulate the natural frequencies is studied. Under the different slope-load conditions, the evaluation indexes of dynamic speed droop and torque amplification factors of transition process are calculated and compared. All these research results are significant to structure design, parameter optimization and vibration control for the mill drive system.
机译:在轧制过程中,轧机传动系统的扭转振动会缩短部件的使用寿命,降低生产效率,并对产品质量产生有害影响,甚至损害设备性能。使用集总质量方法,主驱动链由具有十个自由度的分支非对称模型描述。机械子系统和电气控制回路通过电磁驱动力矩耦合,并建立了机电耦合仿真模型。在此模型的基础上,分析了固有模态对惯性矩和扭转刚度的敏感性,并研究了修改系统参数以调制固有频率的最佳方法。计算并比较了不同边坡荷载条件下的动力降评估指标和过渡过程的转矩放大系数。所有这些研究结果对于轧机驱动系统的结构设计,参数优化和振动控制都具有重要意义。

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